References

  1. M. Kobayashi, S.I. Kurata, Mass culture and cell utilization of photosynthetic bacteria, Process Biochem., 13 (1978) 27–30.
  2. C.P. Grady Jr., G.T. Daigger, H.C. Lim, Biological Wastewater Treatment, 2nd ed., Marcel Dekker Inc., New York, 1999.
  3. W. Shan, H. Liu, H. He, L. Luo, L. Xiang, G. Zeng, Z. Zhou, W. Lou, C. Yang, Treatment of anaerobically digested swine wastewater by Rhodobacter blasticus and Rhodobacter capsulatus, Bioresour. Technol., 222 (2016) 33–38.
  4. A. Talaiekhozani, S. Rezania, Application of photosynthetic bacteria for removal of heavy metals, macro-pollutants and dye from wastewater: a review, J. Water Process Eng., 19 (2017) 312–321.
  5. T.A. Aragaw, A.M. Asmare, Experimental identifications of fresh water microalgae species and investigating the media and pH effect on the productions of microalgae, J. Environ. Treat. Tech., 5 (2017) 124–131.
  6. K. Sasaki, M. Watanabe, Y. Suda, A. Ishizuka, N. Noparatnaraporn, Applications of photosynthetic bacteria for medical fields, J. Biosci. Bioeng., 100 (2005) 481–488.
  7. T. Hülsen, E.M. Barry, Y. Lu, D. Puyol, J. Keller, D.J. Batstone, Domestic wastewater treatment with purple phototrophic bacteria using a novel continuous photo anaerobic membrane bioreactor, Water Res., 100 (2016) 486–495.
  8. P. Prachanurak, C. Chiemchaisri, W. Chiemchaisri, K. Yamamoto, Biomass production from fermented starch wastewater in photo-bioreactor with internal overflow recirculation, Bioresour. Technol., 165 (2014) 129–136.
  9. J. Hao, X. Wang, H. Wang, Investigation of polyhydroxyalkanoates (PHAs) biosynthesis from mixed culture enriched by valeratedominant hydrolysate, Front. Environ. Sci. Eng., 11 (2017) 67–77.
  10. S.A. Azad, S. Vikineswary, V.C. Chong, K.B. Ramachandran, Rhodovulum sulfidophilum in the treatment and utilization of sardine processing wastewater, Lett. Appl. Microbiol., 38 (2004) 13–18.
  11. K. Getha, S. Vikineswary, V.C. Chong, Isolation and growth of the phototrophic bacterium Rhodopseudomonas palustris strain B1 in sago-starch-processing wastewater, World J. Microbiol. Biotechnol., 14 (1998) 505–511.
  12. N.Z.R. Anwar, M.A. Abu Hassan, I. Mahmood, A.K. Khamis, Treatment of rubber processing wastewater by effective microorganisms using anaerobic sequencing batch reactor, J. Biotechnol., 4 (2013) 1–15.
  13. E.H.G. Ponsano, C.Z. Paulino, M.F. Pinto, Phototrophic growth of Rubrivivax gelatinosus in poultry slaughterhouse wastewater, Bioresour. Technol., 99 (2008) 3836–3842.
  14. C. Saejung, T. Thammaratana, Biomass recovery during municipal wastewater treatment using photosynthetic bacteria and prospect of production of single cell protein for feedstuff, Environ. Technol., 37 (2016) 3055–3078.
  15. A. Yang, G. Zhang, G. Yang, H. Wang, F. Meng, H. Wang, M. Peng, Denitrification of aging biogas slurry from livestock farm by photosynthetic bacteria, Bioresour. Technol., 232 (2017) 408–411.
  16. J. Kaewsuk, W. Thorasampan, M. Thanuttamavong, G.T. Seo, Kinetic development and evaluation of membrane sequencing batch reactor (MSBR) with mixed cultures photosynthetic bacteria for dairy wastewater treatment, J. Environ. Manage., 91 (2010) 1161–1168.
  17. H. Lu, G. Zhang, T. Wan, Y. Lu, Influences of light and oxygen conditions on photosynthetic bacteria macromolecule degradation: different metabolic pathways, Bioresour. Technol., 102 (2011) 9503–9508.
  18. I. Zekker, A. Mandel, E. Rikmann, M. Jaagura, S. Salmar, M.M. Ghangrekar, T. Tenno, Ameliorating effect of nitrate on nitrite inhibition for denitrifying P-accumulating organisms, Sci. Total Environ., 797 (2021) 149133, doi: 10.1016/j. scitotenv.2021.149133.
  19. I. Zekker, O. Artemchuk, E. Rikmann, K. Ohimai, G.D. Bhowmick, M.M. Ghangrekar, J. Burlakovs, T. Tenno,
    Start-up of anammox SBR from non-specific inoculum and process acceleration methods by hydrazine, Water, 13 (2021) 350, doi: 10.3390/ w13030350.
  20. I. Zekker, M. Raudkivi, O. Artemchuk, E. Rikmann, H. Priks, M. Jaagura, T. Tenno, Mainstream-sidestream wastewater switching promotes anammox nitrogen removal rate in organic-rich, low-temperature streams, Environ. Technol., 42 (2020) 3073–3082.
  21. E. Rikmann, I. Zekker, T. Tenno, A. Saluste, T. Tenno, Inoculumfree start-up of biofilm- and sludge-based deammonification systems in pilot scale, Int. J. Environ. Sci. Technol., 15 (2017),
    doi: 10.1007/s13762-017-1374-3.
  22. P. Wu, G. Zhang, J. Li, H. Lu, W. Zhao, Effects of Fe2+ concentration on biomass accumulation and energy metabolism in photosynthetic bacteria wastewater treatment, Bioresour. Technol., 119 (2012) 55–59.
  23. Q. Zhou, P. Zhang, G. Zhang, Biomass and carotenoid production in photosynthetic bacteria wastewater treatment: effects of light intensity, Bioresour. Technol., 171 (2014) 330–335.
  24. Q. Zhou, P. Zhang, G. Zhang, Biomass and pigments production in photosynthetic bacteria wastewater treatment: effects of light sources, Bioresour. Technol., 179 (2015) 505–509.
  25. Q. Zhou, P. Zhang, G. Zhang, M. Peng, Biomass and pigments production in photosynthetic bacteria wastewater treatment: effects of photoperiod, Bioresour. Technol., 190 (2015) 196–200.
  26. F. Meng, A. Yang, G. Zhang, H. Wang, Effects of dissolved oxygen concentration on photosynthetic bacteria wastewater treatment: pollutants removal, cell growth and pigments production, Bioresour. Technol., 241 (2017) 993–997.
  27. H. Nagadomi, T. Takahasi, K. Sasaki, H.C. Yang, Simultaneous removal of chemical oxygen demand and nitrate in aerobic treatment of sewage wastewater using an immobilized photosynthetic bacterium of porous ceramic plates, World J. Microbiol. Biotechnol., 16 (2000) 57–62.
  28. I. Zekker, A. Kivirüüt, E. Rikmann, A. Mandel, M. Jaagura, T. Tenno, O. Artemchuk, S. Rubin, T. Tenno, Enhanced efficiency of nitritating-anammox sequencing batch reactor achieved at low decrease rates of oxidation–reduction potential, Environ. Eng. Sci., 36 (2019) 350–360.
  29. F. Meng, A. Yang, G. Zhang, J. Li, X. Li, X. Ma, M. Peng, Effects of dissolved oxygen on key enzyme activities during photosynthetic bacteria wastewater treatment, Process Biochem., 76 (2019) 165–170.
  30. A.D. Eaton, L.S. Clesceri, E.W. Rice, Standard Methods for the Examination of Water and Wastewater, 21st ed., American Public Health Association, American Water Works Association & Water Environment Federation, Washington, DC, USA, 2005.
  31. B. Ma, S. Wang, Z. Li, M. Gao, S. Li, L. Guo, Z. She, Y. Zhao, D. Zheng, C. Jin, X. Wang, F. Gao, Magnetic Fe3O4 nanoparticles induced effects on performance and microbial community of activated sludge from a sequencing batch reactor under longterm exposure, Bioresour. Technol., 225 (2017) 377–385.
  32. C. Lorrungruang, J. Martthong, K. Sasaki, N. Noparatnaraporn, Selection of photosynthetic bacterium Rhodobacter sphaeroides 14F for polyhydroxyalkanoate production with two-stage aerobic dark cultivation, J. Biosci. Bioeng., 102 (2006) 128–131.
  33. S. Sirianuntapiboon, M. Srikul, Reducing red color intensity of seafood wastewater in facultative pond, Bioresour. Technol., 97 (2006) 1612–1617.
  34. K. Izu, F. Nakajima, K. Yamamoto, F. Kurisu, Aeration conditions affecting growth of purple nonsulfur bacteria in an organic wastewater treatment process, Syst. Appl. Microbiol., 24 (2001) 294–302.
  35. X. Zhang, T. Chen, J. Guo, L. Peng, B. Ding, Effects of germination and respiration rate on emmenopterys henryi seed with different hormones, Guizhou Agric. Sci., 3 (2019) 122–124.
  36. J. Lou, Y. Cao, P. Sun, P. Zheng, The effects of operational conditions on the respiration rate of tubificidae. PLoS One, 8 (2013) 12–19.
  37. H. Yuan, T. Ge, X. Wu, S. Liu, C. Tong, H. Qin, M. Wu, W. Wei, J. Wu, Long-term field fertilization alters the diversity of autotrophic bacteria based on the ribulose-1,5-biphosphate carboxylase/oxygenase (RuBisCO) large-subunit genes in paddy soil, Appl. Microbiol. Biotechnol., 95 (2012) 1061–1071.
  38. T. Genkov, M. Meyer, H. Griffiths, R.J. Spreitzer, Functional hybrid RuBisCO enzymes with plant small subunits and algal large subunits: engineered rbcS cDNA for expression in chlamydomonas, J. Biol. Chem., 285 (2010) 19833–19859.
  39. B. Bowien, B. Kusian, Genetics and control of CO2 assimilation in the chemoautotroph Ralstonia eutropha, Arch. Microbiol., 178 (2002) 85–93.
  40. M.W. Finn, F. Robert Tabita, Synthesis of catalytically active form III ribulose 1,5-bisphosphate carboxylase/oxygenase in archaea, J. Bacteriol., 185 (2003) 3049–3059.